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at the altitudinal limits of angiosperm plant life
负责人:
关键词:
phylogenetic diversity;Spermatophyta;alpine flora;mega-phylogeny
DOI:
doi:10.5061/dryad.mc50c
摘要:
and stochastic factors driving plant community structure in very high-alpine conditions. Location: European Alps, écrins National Park, France. Methods: Usi
Data from: Is there any evidence for rapid, genetically-based, climatic niche expansion in the invasive common ragweed?
负责人:
关键词:
2000-2010;biological invasions;Ambrosia artemisiifolia L.
DOI:
doi:10.5061/dryad.pp72j
摘要:
in the French Alps. Based on species climatic niche models estimated at both global and regional scales we stratified our sampling design to adequately capture
Data from: Soil fungal communities of grasslands are environmentally structured at a regional scale in the Alps
负责人:
关键词:
Trifolium medium;Microglossum;Anthoxanthum odoratum;Clavulina;Anthriscus sylvestris;Helianthemum nummularium;Arabis alpina;Juncus effusus;Vaccinium gaultherioides;Scabiosa lucida;Saxifraga paniculata;Cadophora;Ligusticum mutellina;Phyteuma spicatum;Achillea millefolium;Hypericum maculatum;Ranunculus aconitifolius;Lecythophora;Galium megalospermum;Geranium sylvaticum;Poa supina;Glechoma hederacea;Environmental DNA;Leontodon helveticus;Bromus hordeaceus;Carex atrata;Rumex acetosa;Helictotrichon versicolor;Polygala chamaebuxus;Calamagrostis varia;Luzula multiflora;Ajuga reptans;Trisetum flavescens;Alchemilla vulgaris;Tetracladium;Environmental Metagenomics;Rhinanthus alectorolophus;Russula;Arrhenatherum elatius;Poa minor;Prunella vulgaris;Gentiana verna;Festuca rubra;Trifolium badium;Pedicularis foliosa;Filipendula ulmaria;Cirsium acaule;Daucus carota;Coprinus;Trifolium pratense;Salix herbacea;Ononis repens;Knautia arvensis;Mortierella;Athamanta cretensis;Campanula cochleariifolia;Homogyne alpina;Taraxacum officinale;Rumex crispus;elevation gradient;Lolium perenne;Gibberella;Carex ferruginea;Tragopogon pratensis;Rhinanthus minor;Silene vulgaris;Campanula glomerata;Saxifraga aizoides;Molinia caerulea;Acaulospora;Embellisia;Rhododendron ferrugineum;Gentiana lutea;Cerastium latifolium;Androsace chamaejasme;Cerastium fontanum;Aster bellidiastrum;Herpotrichia;Gentiana acaulis;Trichosporon;Cudoniella;Saxifraga moschata;Lolium multiflorum;Polygonum viviparum;Crepis pyrenaica;Gentiana bavarica;Medicago lupulina;Tofieldia calyculata;Festuca pratensis;Festuca quadriflora;Fungi;Ranunculus alpestris;Phialocephala;Caltha palustris;Cryptococcus;Campanula rotundifolia;Valeriana montana;Cerastium arvense;Hippocrepis comosa;Thlaspi rotundifolium;Leucanthemum vulgare;Metarhizium;Chaerophyllum hirsutum;Species Interactions;Ranunculus acris;Leontodon autumnalis;Poa alpina;Carex pallescens;Hedysarum hedysaroides;Plantago media;Veronica officinalis;Vicia sepium;Anemone narcissiflora;mitosporic Trichocomaceae;Geum rivale;Gentiana campestris;Carex sempervirens;Myosotis arvensis;Cosmospora;Soldanella alpina;Carex flacca;Phleum pratense;Lathyrus pratensis;Rhodotorula;Glomus;Crepis vesicaria;Campanula scheuchzeri;Articulospora;Thymus praecox;environmental gradients;Monodictys;Gypsophila repens;Solidago virgaurea;Thesium alpinum;Pimpinella saxifraga;Pulsatilla alpina;Carduus defloratus;Centaurea montana;Community Ecology;Prunella grandiflora;Holcus lanatus;Primula farinosa;Veratrum album;Leohumicola;Trollius europaeus;Carex sylvatica;Luzula campestris;Primula veris;Cladophialophora;Viola biflora;Deschampsia cespitosa;Vaccinium myrtillus;Pimpinella major;Centaurea jacea;Silene acaulis;Veronica persica;Camarophyllopsis;Polygonum bistorta;Arnica montana;Bromus erectus;Kernia;Alchemilla conjuncta;Centaurea scabiosa;Lachnum;Diversispora;Poa cenisia;Brachypodium pinnatum;Olpidium;Astrantia major;Hypochaeris radicata;Lotus corniculatus;Trifolium montanum;Lysimachia nummularia;Sanguisorba minor;Senecio doronicum;Preussia;Acinos alpinus;Achillea atrata;Onobrychis montana;Aposeris foetida;Cruciata laevipes;Adenostyles glabra;Knautia dipsacifolia;Potentilla erecta;Euphorbia cyparissias;Landscape Genetics;Fragaria vesca;Pritzelago alpina;Stachys officinalis;Bellis perennis;Festuca violacea;Phleum rhaeticum;Dryas octopetala;Primula elatior;Salvia pratensis;Saxifraga oppositifolia;mitosporic Herpotrichiellaceae;Podospora;Linum catharticum;Agrostis schraderiana;Exophiala;Origanum vulgare;Trifolium repens;Ganoderma;Campanula barbata;Cirsium oleraceum;Plantago major;Poa trivialis;Veronica chamaedrys;Carlina acaulis;Anthyllis vulneraria;Poa pratensis;Vicia cracca;Agrostis capillaris;Holocene\/Anthropocene;Dactylis glomerata;Ranunculus montanus;Geomyces;Tussilago farfara;Entoloma;Phyteuma orbiculare;Carex nigra;Geum montanum;Globularia nudicaulis;Doronicum grandiflorum;Myosotis alpestris;Alatospora;Phleum hirsutum;Taraxacum alpinum;Vicia sativa;Agrostis rupestris;Hieracium villosum;Ranunculus repens;Laccaria;Hieracium lactucella;Cylindrocarpon;Luzula sylvatica;Cirsium spinosissimum;Polygala vulgaris;Salix retusa;plant-fungi interactions;Inocybe;Gentiana purpurea;Agrostis alpina;Plantago alpina;Alchemilla xanthochlora;Sesleria caerulea;Hypocrea;Parnassia palustris;Globularia cordifolia;Trifolium thalii;Alchemilla glabra;Plantago atrata;Briza media;Rumex alpinus;Clinopodium vulgare;Carex panicea;Hieracium pilosella;Cynosurus cristatus;Plantago lanceolata;Petasites paradoxus;Veronica alpina;Bartsia alpina;Soil fungal community;Potentilla crantzii;Chaerophyllum aureum;Claroideoglomus;Nardus stricta;Tremella;Galium album;Leontodon hispidus;Paecilomyces;Microdochium;Oxytropis jacquinii;phylogenetic diversity;Salix reticulata;Neonectria;Heracleum sphondylium;Pseudeurotium;Pseudonectria;Mrakia;Galium pumilum;Linaria alpina;Agrostis stolonifera;Carum carvi;Galium anisophyllon;Potentilla aurea;Veronica aphylla;Adenostyles alliariae;Vaccinium vitisidaea;Crepis aurea;Hygrocybe;Hieracium bifidum;alpine grassland;Panaeolus;454 pyrosequencing;Laserpitium latifolium
DOI:
doi:10.5061/dryad.88fm3
摘要:
m elevation gradient at a large number of sites (213), stratified across a region of the western Swiss Alps (700 km2). We used 454 pyro-sequencing to obtain fungal
Data from: Limited gene exchange between two sister species of leaf beetles within a hybrid zone in the Alps
负责人:
关键词:
Gonioctena <\/i>;Gonioctena;hybridization;introgression;Gonioctena quinquepunctata;Gonioctena intermedia;RAD sequencing
DOI:
doi:10.5061/dryad.v67m4f0
摘要:
on two sister species of cold-resistant leaf beetles, Gonioctena quinquepunctata and G. intermedia, whose ranges overlap in the Alps. A previous study
genetic split – a story of the importance of temperate mountain ranges in arctic-alpine phylogeography
负责人:
关键词:
Ranunculus glacialis;Ranunculus camissonis;climate change;disjunction;Quaternary;Migration;Arctic;European Alpine System;refugia;phylogeography
DOI:
doi:10.5061/dryad.7b87b
摘要:
but occurred within the Alps. The Beringian lineage and North Atlantic Arctic populations, which reached their current distribution via rapid
Data from: Phenological plasticity is a poor predictor of subalpine plant population performance following experimental climate change
负责人:
关键词:
climate change;Demography;Global warming;phenological shifts;phenology;Phenotypic Plasticity;population dynamics;Transplant experiment
DOI:
doi:10.5061/dryad.vt4b8gtn4
摘要:
subalpine grasslands to ~ 3 K of warming by transplanting intact turfs from 2000 m to 1400 m elevation in the eastern Swiss Alps, with turfs transplanted
Data from: Indication for selfing in geographically separated populations and evidence for Pleistocene survival within the Alps: the cas
负责人:
关键词:
glacial refugia;microsatellites;Cylindrus obtusus;sel?ng;Gastropoda;COI;endemic species;phylogeography
DOI:
doi:10.5061/dryad.4gr1h
摘要:
Background: Cylindrus obtusus is one of the most prominent endemic snail species of the Eastern Alps. It is restricted to alp
Data from: Combining human acceptance and habitat suitability in a unified socio-ecological suitability model: a case study of the wolf
负责人:
Behr, Dominik
关键词:
conservation habitat suitability model human-wildlife conflict range expansion recolonisation large carnivores sociological survey socio-demographic factors
DOI:
doi:10.5061/dryad.t4t73
摘要:
in the Jura Mountains and in the eastern and southern Alps, and were absent in the western and central Alps. Particularly in the Jura region, which is yet to be colonised
Data from: Geographical parthenogenesis and population genetic structure in the alpine species Ranunculus kuepferi (Ranunculaceae)
负责人:
关键词:
population genetics;self-compatibility;Ranunculus kuepferi Greut. et Burd.;Apomixis;Frozen Niche Variation;Bakers\u2019 law
DOI:
doi:10.5061/dryad.r37sj
摘要:
distribution area (European Alps, Apennines and Corsica). Amplified fragment length polymorphisms (AFLPs) and five microsatellite loci revealed individual genotypes

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